PDF

From Waste to Wealth: A Circular Economy Approach to the Sustainable Recovery of Rare Earth Elements and Battery Metals from Mine Tailings

Mohammed Omar Sahed Chowdhury, Deniz Talan

2025encircular economyrare earth elementssustainable recoverymine tailingsmineral recovery

Abstract

Language:

The increasing global demand for critical minerals, driven by rapid population growth and the widespread adoption of low-carbon technologies, electric vehicles, and clean energy systems, highlights the urgent need for sustainable resource management. Mine tailings, traditionally considered waste, are now being recognized as valuable secondary sources for mineral recovery. This paper compiles a comprehensive review of the four short- and mid-term critical minerals (lithium, cobalt, nickel, and rare earth elements) and provides insights regarding their recovery with a focus on the latest technological advancements. By exploring key innovations in separation processes, the review demonstrates how these technologies are addressing supply chain bottlenecks while simultaneously reducing the environmental footprint of mining operations. The paper also advocates for a holistic approach to mine waste management, integrating mineral recovery with environmental remediation. It emphasizes the dual benefits of recovering valuable resources while purifying contaminated water and mitigating pollution risks. The proposed circular economy model suggests a sustainable blueprint for managing mine tailings, emphasizing resource reuse, waste reduction, and economic viability.

Download

Cite This Work

@article{c55b59fe-a857-4119-bef2-f6b595ec8d17,
  title={From Waste to Wealth: A Circular Economy Approach to the Sustainable Recovery of Rare Earth Elements and Battery Metals from Mine Tailings},
  author={Mohammed Omar Sahed Chowdhury and Deniz Talan},
  year={2025},
  language={en}
}
TY  - JOUR
TI  - From Waste to Wealth: A Circular Economy Approach to the Sustainable Recovery of Rare Earth Elements and Battery Metals from Mine Tailings
AU  - Mohammed Omar Sahed Chowdhury
AU  - Deniz Talan
PY  - 2025
LA  - en
ER  -

Similar Items

Role of microorganisms in bioleaching of rare earth elements from primary and secondary resources

Homayoun Fathollahzadeh, Jacques J. Eksteen, Anna H. Kaksonen, Elizabeth L. J. Watkin, Homayoun Fathollahzadeh & Jacques J. Eksteen & Anna H. Kaksonen & Elizabeth L. J. Watkin

In an era of environmental degradation, and water, and mineral scarcity, enhancing microbial function in sustainable mining has become a prerequisite

2018enPDF

Electronic waste generation, regulation and metal recovery: a review

Rajarathinam Nithya, Chandrasekaran Sivasankari, Arunachalam Thirunavukkarasu

Waste will become the major resource in the future circular economy. In particular, E-waste is a major sector growing at an annual rate of about 2 mil

2020enPDF

PRODUCTION OF TECHNOLOGY METALS FROM WASTE ELECTRONICS

Maja Mandić, Jovana Đokić, Nataša Gajić, Jelena Uljarević, Željko Kamberović

The rising criticality of technologically inevitably metals and the continuous growth of the waste electronics promote a scientifi c need for developm

2019enPDF

Effect of Roasting Temperature for Copper Leaching of Sulfide Concentrate by Combined Methods

Introduction Concerns over air pollution and the environmental problem of acid rain have made governments all over the world tighten their regulations

2023enPDF

Equation Driven Design and Validation of a Reverberatory Furnace for Non ferrous Metals

Roger Rumbu check

2025enPDF$30.00

Biometallurgical Recovery of Metals from Waste Electrical and Electronic Equipment: a Review

Sadia Ilyas, Jae-chun Lee

The feasibility of biometallurgical processing for recovering heavy metals, precious metals, and rare earth elements from waste electrical and electro

2014enPDF